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Geometric design and analysis of face-gear drive with involute helical pinion

机译:渐开线螺旋小齿轮齿轮驱动几何设计与分析

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摘要

Entire tooth surface precise modeling and systematic analysis method for face-gear drives with an involute helical pinion are investigated. A modified imaginary shaper is mathematically modeled as the geometric design tool. The entire tooth surface of the face gear is determined analytically as the envelope to the family of imaginary shaper tooth surface. A practical method to determine the minimum and maximum radii of the face gear is developed. Addendum modification of the face gear is implemented mathematically based on the modified imaginary shaper to improve face-gear tooth-top thickness. Conical modification of the pinion is proposed to avoid contact between face-gear tooth-root fillet and the pinion tooth. Transverse pressure angle modification of the pinion is also proposed to avoid edge contact arising at inner-end and outer-end edges of face-gear tooth. Finite element models with nine pairs of teeth are employed for 3D contact finite element analysis to investigate the basic characteristics of face-gear drives, including meshing and tooth contact analysis, contact and bending stress analysis, contact ratio, transmission error, mesh stiffness, and sensitivity test. The helical face-gear drive is sensitive to rotation direction and shaft angle error. The presented geometric design method is illustrated and validated by numerical examples and trial manufacture. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了整个齿面精确建模和具有渐开线螺旋齿轮齿轮驱动器的精密建模和系统分析方法。修改后的虚拟体塑造是数学上建模为几何设计工具。面齿轮的整个齿面被分析地确定为虚设齿形齿面的包膜。开发了确定面齿轮的最小和最大半径的实用方法。基于修改的假想芯片,在数学上实现面齿轮的附录修改,以改善面齿轮齿顶厚度。提出了小齿轮的锥形修改,以避免面齿轮齿根圆角和小齿轮之间的接触。还提出了小齿轮的横向压力角度改变,以避免面部齿轮齿的内端和外端边缘处产生的边缘接触。有限元模型用于3D接触有限元分析,用于研究面部齿轮驱动器的基本特性,包括啮合和齿接触分析,接触和弯曲应力分析,接触比,传动误差,网格刚度和敏感性测试。螺旋脸部齿轮驱动对旋转方向和轴角误差敏感。通过数值示例和试验制造说明和验证了所提出的几何设计方法。 (c)2018年elestvier有限公司保留所有权利。

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